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Overexpression of GLUTAMINE DUMPER1 Leads to Hypersecretion of Glutamine from Hydathodes of Arabidopsis Leaves

机译:谷氨酰胺DUMPER1的过表达导致拟南芥叶片Hydathodes谷氨酰胺的过度分泌

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摘要

Secretion is a fundamental process providing plants with the means for disposal of solutes, improvement of nutrient acquisition, and attraction of other organisms. Specific secretory organs, such as nectaries, hydathodes, and trichomes, use a combination of secretory and retrieval mechanisms, which are poorly understood at present. To study the mechanisms involved, an Arabidopsis thaliana activation tagged mutant, glutamine dumper1 (gdu1), was identified that accumulates salt crystals at the hydathodes. Chemical analysis demonstrated that, in contrast with the amino acid mixture normally present in guttation droplets, the crystals mainly contain Gln. GDU1 was cloned and found to encode a novel 17-kD protein containing a single putative transmembrane span. GDU1 is expressed in the vascular tissues and in hydathodes. Gln content is specifically increased in xylem sap and leaf apoplasm, whereas the content of several amino acids is increased in leaves and phloem sap. Selective secretion of Gln by the leaves may be explained by an enhanced release of this amino acid from cells. GDU1 study may help to shed light on the secretory mechanisms for amino acids in plants.
机译:分泌是一个基本过程,为植物提供了处理溶质,改善养分获取和吸引其他生物的手段。特定的分泌器官,例如蜜腺,hydrathodes和毛状体,使用分泌和回收机制的组合,目前尚不清楚。为了研究涉及的机制,鉴定了拟南芥激活标记的突变体谷氨酰胺dumper1(gdu1),该盐在hydrothodes上积累了盐晶体。化学分析表明,与通常存在于滴状液滴中的氨基酸混合物相反,晶体主要包含Gln。克隆了GDU1,发现它编码一种新的17-kD蛋白,该蛋白包含单个推定的跨膜跨距。 GDU1在血管组织和hydrathodes中表达。木质部汁液和叶片无浆质中的Gln含量特别增加,而叶片和韧皮部汁液中几种氨基酸的含量增加。叶子对Gln的选择性分泌可能是由于该氨基酸从细胞中释放的增强所致。 GDU1研究可能有助于阐明植物氨基酸的分泌机制。

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